Area of research
Speech and Hearing · Automotive Engineering
Research interest
Research interests include Noise Effects and Management, Vehicle Noise and Vibration Control, Acoustic Wave Phenomena Research, and Human Mobility and Location-Based Analysis.
Road traffic noise exposure assessment based on spatiotemporal data fusion
Node Connection Strength Matrix-Based Graph Convolution Network for Traffic Flow Prediction
Enhancing the Robustness of Networks Against Multiple Damage Models Using a Multifactorial Evolutionary Algorithm
Improved Transformer-Based Privacy-Preserving Architecture for Intrusion Detection in Secure V2X Communications
Urban noise exposure assessment based on principal component analysis of points of interest
Characterizing nighttime vertical profiles of atmospheric particulate matter and ozone in a megacity of south China using unmanned aerial vehicle measurements
Vehicle Trajectory Prediction in Connected Environments via Heterogeneous Context-Aware Graph Convolutional Networks
Autonomous Transportation Systems and Services Enabled by the Next-Generation Network
Traffic Node Importance Evaluation Based on Clustering in Represented Transportation Networks
Dynamic traffic noise maps based on noise monitoring and traffic speed data
Evaluation of urban traffic noise pollution based on noise maps
Fine-scale variations in PM2.5 and black carbon concentrations and corresponding influential factors at an urban road intersection
Evaluation of road traffic noise exposure based on high-resolution population distribution and grid-level noise data
Evaluation of an urban traffic Noise–Exposed population based on points of interest and noise maps: The case of Guangzhou
Road traffic noise mapping in Guangzhou using GIS and GPS
Collaborative Research: Predictive Understanding of Wildfire Spotting and Smoke Transport within the Atmospheric Boundary Layer
Collaborative Research: On the Intensity and Size Relationship of Tropical Cyclones
Collaborative Research: Fingerprinting Energy and Water Cycle Extremes through a Scale-Interaction Lens
Collaborative Research: Understanding Climate Feedbacks and 3-D Global Warming Patterns in Global General Circulation Climate Models
SGER: Stratosphere-Troposphere Transfer of the Zonal Angular Momentum Associated with the Global Mass Circulation
Collaborative Research: Seasonal and Geographical Impact of Land-Use on Climate Change